26 - 28 September 2017 // Nuremberg, Germany

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Zoom product LOGO_Electrostatic ReCyclone® System

Electrostatic ReCyclone® System

LOGO_Electrostatic ReCyclone® System

Electrostatic ReCyclone® System

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Finally, recent adoption of electrostatic recirculation in the same cyclone system has successfully proven to further reduce particle emissions, even in the [1;5] μm particle size range, assuring future regulation compliance, particularly where legal limits are very tight, with the objective of bag filter redundancy.

A dc high voltage is applied in the concentrator, allowing the recirculation of very fine nanometric particles, more resistant to centrifugal forces, to the cyclone collector. After having been separated in the recirculator and concentrated in the recirculation flow, electrically charged fine particles are attracted by the cyclone walls, while agglomerating with larger particles entering the system, both promoting their easier capture. Since particles are not captured on the walls of the recirculator, contrary to ESPs, ReCyclone® EH Systems are immune to either low or high dust electrical resistivity, and the HV necessary power is only 10 to 15 % of that used with ESPs. Electrostatic reciculation for fine particle capture was the winner of the Portuguese Environmental Press Award in 2008 and Nominee for the European Environmental Press Award 2008.

Application

POWDER RECOVERY:
  • Pharmaceutical Ingredients
  • Chemicals
  • Nanoparticles
  • Mineral Processing
  • Fertilizers
  • Milling and Drying Processes
EMISSION CONTROL & AIR DEDUSTING:
  • Biomass and Coal Boilers
  • Fuel Oil Boilers
  • Steel and Ferrous Alloys
  • Clinker Cooler Air Dedusting
  • Pyrolysis, Incineration and Gasification
  • Glass and Ceramic Furnaces
  • High Temperature Separation Processes

Hurricane cyclone

LOGO_Hurricane cyclone

Mechanical ReCyclone® System

LOGO_Mechanical ReCyclone® System

ReCyclone® EMC

LOGO_ReCyclone® EMC

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